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Field‐Free Manipulation of Skyrmion Creation and Annihilation by Tunable Strain Engineering

Chun Feng, Fei Meng, Yadong Wang, Jiawei Jiang, Nasir Mehmood, Yi Cao, Xiaowei Lv, Feng Yang, Lei Wang, Yongkang Zhao, Shuai Xie, Zhipeng Hou, Wenbo Mi, Yong Peng, Kai Wang, Xingsen Gao, Guanghua Yu, Jun‐Ming Liu

2021Advanced Functional Materials58 citationsDOI

Abstract

Abstract Creation and annihilation of skyrmions are two crucial issues for constructing skyrmion‐based memory and logic devices. To date, these operations were mainly achieved by means of external magnetic, electrical, and optical modulations. In this work, we demonstrated an effective strain‐induced skyrmion nucleation/annihilation phenomenon in [Pt/Co/Ta] n multilayers utilizing the shape memory effect of a TiNiNb substrate. A tunable tensile strain up to 1.0% can be realized in the films by thermally driving phase transition of the substrate, which significantly decreases the nucleation field of skyrmions by as many as 400 Oe and facilitates the field‐free manipulation of skyrmions with the strain. Such a strain effect can be attributed to the synergetic interplay of the planar magnetic moment twirling and decrement of interfacial Dzyaloshinskii–Moriya interaction. In addition, the strain tunability is found to be strongly related to the strain direction due to magnetoelastic interaction. These findings provide a novel strategy for developing strain‐assisted skyrmion‐based memory and logic devices.

Topics & Concepts

SkyrmionMaterials scienceNucleationAnnihilationCondensed matter physicsStrain (injury)Substrate (aquarium)Magnetic fieldField (mathematics)Strain engineeringPlanarShape-memory alloyPhase (matter)Phase transitionOptoelectronicsComposite materialPhysicsThermodynamicsMedicineGeologyMathematicsInternal medicinePure mathematicsComputer graphics (images)Computer scienceOceanographyQuantum mechanicsShape Memory Alloy TransformationsMagnetic properties of thin filmsMagnetic and transport properties of perovskites and related materials
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